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Guided-mode resonant narrowband terahertz filtering by periodic metallic stripe and patch arrays on cyclo-olefin substrates

机译:环烯烃基材上周期金属条纹和贴片阵列的引导模式谐振窄带过滤

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We experimentally and theoretically demonstrate a class of narrowband transmissive filters in the terahertz spectrum. Their operation is based on the excitation of guided-mode resonances in thin films of the low-loss cyclo-olefin polymer Zeonor, upon which aluminum stripe and patch arrays are patterned via standard photolithography. The filters are engineered to operate in low atmospheric loss THz spectral windows, they exhibit very high transmittance and quality factors, compact thickness, and mechanical stability. The dependence of their filtering properties on the geometrical parameters, the substrate thickness and the angle of incidence is investigated, discussing the physical limitations in their performance. This class of filters provides a cost-effective solution for broadband source or channel filtering in view of emerging terahertz wireless communication systems.
机译:我们在实验和理论上展示了太赫兹光谱中的一类窄带透射滤波器。它们的操作基于低损失环烯烃聚合物Zeonor的薄膜的引导模式共振的激发,通过标准光刻图案化铝条带和贴片阵列。过滤器设计成在低大气损耗THz光谱窗口中运行,它们具有非常高的透射率和质量因素,紧凑的厚度和机械稳定性。研究其滤波特性对几何参数,基板厚度和入射角的依赖性,讨论了它们性能的物理限制。这类过滤器在新兴太赫兹无线通信系统的视图中为宽带源或通道过滤提供了一种经济高效的解决方案。

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